CN217116171U - Networking system for power supply service command - Google Patents
Networking system for power supply service command Download PDFInfo
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- CN217116171U CN217116171U CN202221045834.0U CN202221045834U CN217116171U CN 217116171 U CN217116171 U CN 217116171U CN 202221045834 U CN202221045834 U CN 202221045834U CN 217116171 U CN217116171 U CN 217116171U
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Abstract
The utility model relates to a networking system for power supply service command, which comprises a core platform and a plurality of edge platforms, wherein each edge platform is arranged in different areas; the core platform comprises a main server and a standby server which are arranged in a redundant mode, and the main server and the standby server are used for providing cloud service; each edge platform comprises at least one convergence gateway, a plurality of phone terminals and a plurality of workstations; the convergence gateway is used for accessing an operator telephone, a dispatching telephone and an administrative telephone; the convergence gateway is in communication connection with the workstation, and the phone terminal is in communication connection with the workstation; the phone terminal is used for answering various phones accessed by the convergence gateway; the workstation is in communication connection with the core platform through an IP intranet. The utility model discloses a core platform and a plurality of marginal platform, core platform dispose in the core region, and marginal platform disposes in specific service area, reduces the deployment cost of core platform.
Description
Technical Field
The utility model relates to a networking system for power supply service commander belongs to power supply service commander technical field.
Background
When the power supply service is provided, the grid personnel need to be commanded through the network. The traditional command mode is that a telephone traffic center answers a call, telephone traffic personnel generate a work order according to the requirements of a user, and then tasks are issued to corresponding grid personnel. With the application of information technology, power supply service command systems have emerged in succession. The existing power supply service command system has the following problems: 1. because a user may call in through different telephone networks, the traditional power supply service command system needs to be equipped with telephones facing different networks, if three network systems exist, one operator needs to deal with three telephones at the same time, and if a plurality of the telephones call simultaneously, corresponding untimely calling is caused. 2. The telephone and the data query system are independent, and the efficiency of telephone operators for querying data information is low.
SUMMERY OF THE UTILITY MODEL
In order to overcome the problem, the utility model provides a networking system for power supply service commander, this networking system include core platform and a plurality of marginal platform, and the core platform is disposed at the core region, and marginal platform disposes at specific service area, reduces the deployment cost of core platform.
The technical scheme of the utility model as follows:
a networking system for power supply service command comprises a core platform and a plurality of edge platforms, wherein each edge platform is deployed in different areas; the core platform comprises a main server and a standby server which are arranged in a redundant mode, and the main server and the standby server are used for providing cloud service; each edge platform comprises at least one convergence gateway, a plurality of phone terminals and a plurality of workstations; the convergence gateway is used for accessing an operator telephone, a dispatching telephone and an administrative telephone; the convergence gateway is in communication connection with the workstation, and the phone terminal is in communication connection with the workstation; the phone terminal is used for answering various phones accessed by the convergence gateway; the workstation is in communication connection with the core platform through an IP intranet.
Further, the ratio of the workstation to the telephone terminal is 1:1, and one telephone terminal is connected with one workstation.
Furthermore, the system is characterized by further comprising a plurality of first display screens, and one first display screen is connected with one workstation.
The system is further characterized by further comprising a second display screen, wherein the second display screen is simultaneously connected with each workstation.
The utility model discloses following beneficial effect has:
1. the networking system comprises a core platform and a plurality of edge platforms, wherein the core platform is deployed in a core area, and the edge platforms are deployed in a specific service area, so that the deployment cost of the core platform is reduced. Meanwhile, the edge platform is deployed in a specific service area, so that dispatching personnel can conveniently carry out dispatching command.
2. The networking system accesses the telephones from different networks through a convergence gateway and distributes the telephones, and a dispatcher only needs to correspond to one telephone, so that the corresponding untimely condition is avoided.
3. The workstation of the networking system is in communication connection with the telephone, and the workstation can acquire information of incoming calls, so that the data query efficiency of scheduling personnel is improved.
Drawings
Fig. 1 is a network topology diagram of the present invention.
Fig. 2 is a network topology diagram according to an embodiment of the present invention.
In the figures, the reference numbers are given by:
1. a core platform; 2. an edge platform; 3. a main server; 4. a standby server; 5. a convergence gateway; 6. a telephone terminal; 7. a workstation.
Detailed Description
The present invention will be described in detail below with reference to the accompanying drawings and specific embodiments.
Referring to fig. 1-2, a networking system for power supply service command includes a core platform 1 and a plurality of edge platforms 2, each of the edge platforms 2 being deployed in a different area; the core platform 1 comprises a main server 3 and a standby server 4 which are arranged in a redundant mode, and the main server 3 and the standby server 4 are used for providing cloud service; each edge platform 2 comprises at least one convergence gateway 5, a plurality of phone terminals 6 and a plurality of workstations 7; the convergence gateway 5 is used for accessing operator telephones, dispatching telephones and administrative telephones; the convergence gateway 5 is in communication connection with the workstation 7, and the phone terminal 6 is in communication connection with the workstation 7; the phone terminal 6 is used for answering various phones accessed by the convergence gateway 5; the workstation 7 is in communication connection with the core platform 1 through an IP intranet.
The networking system comprises a core platform 1 and a plurality of edge platforms 2, wherein the core platform 1 is deployed in a core area, and the edge platforms 2 are deployed in a specific service area, so that the deployment cost of the core platform 1 is reduced. Meanwhile, the edge platform 2 is deployed in a specific service area, so that dispatching personnel can conveniently carry out dispatching command. For example, a city-level networking system may be provided with a core platform, and specific edge platforms 2 are set in different service areas, so that a dispatcher only needs to dispatch tasks in the areas. While reducing the deployment cost of the core platform 1.
The convergence gateway 5 can access telephones of different networks simultaneously, and the deployment number of the phone terminals 6 is reduced.
The workstation 7 is used for scheduling personnel to perform data query, and since telephone traffic is distributed to the telephone terminal 6 after passing through the workstation 7, the workstation 7 can acquire telephone traffic information such as a telephone number and then query an associated electricity account through the telephone number. And the data inquiry of the dispatcher is facilitated.
The stability of communication is ensured by connecting the core platform through the IP intranet.
In one embodiment of the invention, the ratio of the workstation 7 to the telephone terminal 6 is 1:1, and one of the telephone terminals 6 is connected to one of the workstations 7.
In one embodiment of the present invention, a plurality of first display screens are further included, and one of the first display screens is connected to one of the workstations 7.
In one embodiment of the invention, a second display screen is included, which is simultaneously connected to each of the workstations 7. The second display screen is displayed on a large screen, and the screen can be conveniently called and shared.
Referring to fig. 1-2, the working principle of the present invention is as follows:
the utility model discloses when using, fuse gateway 5 and insert the traffic information, and pass through workstation 7 distributes to different phone terminal 6, and the dispatcher answers and handles the traffic information, and passes through workstation 7 carries out data query.
The above only is the embodiment of the present invention, not limiting the scope of the present invention, all the equivalent structures made by the contents of the specification and the drawings, or directly or indirectly applied to other related technical fields, are included in the same principle as the protection scope of the present invention.
Claims (4)
1. A networking system for power supply service command is characterized by comprising a core platform (1) and a plurality of edge platforms (2), wherein each edge platform (2) is deployed in different areas; the core platform (1) comprises a main server (3) and a standby server (4) which are arranged in a redundant mode, and the main server (3) and the standby server (4) are used for providing cloud service; each edge platform (2) comprises at least one convergence gateway (5), a plurality of phone terminals (6) and a plurality of workstations (7); the convergence gateway (5) is used for accessing an operator telephone, a dispatching telephone and an administrative telephone; the convergence gateway (5) is in communication connection with the workstation (7), and the phone terminal (6) is in communication connection with the workstation (7); the phone terminal (6) is used for answering various phones accessed by the convergence gateway (5); the workstation (7) is in communication connection with the core platform (1) through an IP intranet.
2. Networking system for power service commands according to claim 1, characterized in that the ratio of the workstation (7) and the phone terminal (6) is 1:1 and one of the phone terminals (6) is connected to one of the workstations (7).
3. The networking system for power supply service command of claim 2, further comprising a plurality of first display screens, wherein one of the first display screens is connected with one of the workstations (7).
4. Networking system for power service commands according to claim 3, characterized in that it comprises a second display screen, which is connected to each of said workstations (7) simultaneously.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202221045834.0U CN217116171U (en) | 2022-05-05 | 2022-05-05 | Networking system for power supply service command |
Applications Claiming Priority (1)
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CN202221045834.0U CN217116171U (en) | 2022-05-05 | 2022-05-05 | Networking system for power supply service command |
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CN217116171U true CN217116171U (en) | 2022-08-02 |
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CN202221045834.0U Active CN217116171U (en) | 2022-05-05 | 2022-05-05 | Networking system for power supply service command |
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